Microfluidic-SERS sensing system based on dual signal amplification and aptamer for gastric cancer detection.


Journal

Mikrochimica acta
ISSN: 1436-5073
Titre abrégé: Mikrochim Acta
Pays: Austria
ID NLM: 7808782

Informations de publication

Date de publication:
14 Oct 2024
Historique:
received: 08 07 2024
accepted: 08 10 2024
medline: 14 10 2024
pubmed: 14 10 2024
entrez: 14 10 2024
Statut: epublish

Résumé

Studies have found that matrix metalloproteinase-9 (MMP-9) and interleukin-6 (IL-6) play an important role in tumorigenesis. In order to detect MMP-9 and IL-6 concentrations with high sensitivity and specificity, an efficient microfluidic-SERS sensing system was prepared based on surface-enhanced Raman scattering (SERS). The aptamer recognition-release mechanism and the dual signal amplification strategy were applied in the sensing system. The sensor system was developed using two kinds of nanomaterials with excellent SERS properties, namely gold-coated iron tetroxide particles (Fe

Identifiants

pubmed: 39400726
doi: 10.1007/s00604-024-06760-z
pii: 10.1007/s00604-024-06760-z
doi:

Substances chimiques

Aptamers, Nucleotide 0
Gold 7440-57-5
Matrix Metalloproteinase 9 EC 3.4.24.35
Interleukin-6 0
DNA, Single-Stranded 0
MMP9 protein, human EC 3.4.24.35
IL6 protein, human 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

668

Subventions

Organisme : Yangzhou Social Development fund
ID : YZ2022089
Organisme : Key Medical Research Projects of Yangzhou Health Commission
ID : 2023-1-04

Informations de copyright

© 2024. The Author(s), under exclusive licence to Springer-Verlag GmbH Austria, part of Springer Nature.

Références

Wu H, Ma W, Jiang C, Li N, Xu X, Ding Y, Jiang H (2023) Heterogeneity and adjuvant therapeutic approaches in MSI-H/dMMR resectable gastric cancer: emerging trends in immunotherapy. Ann Surg Oncol 30(13):8572–8587
doi: 10.1245/s10434-023-14103-0 pubmed: 37667098 pmcid: 10625937
Abbas M, Habib M, Naveed M, Karthik K, Dhama K, Shi M, Dingding C (2017) The relevance of gastric cancer biomarkers in prognosis and pre- and post-chemotherapy in clinical practice. Biomed Pharmacother 95:1082–1090
doi: 10.1016/j.biopha.2017.09.032 pubmed: 28922727
Matysiak-Budnik T, Mégraud F (2006) Helicobacter pylori infection and gastric cancer. Eur J Cancer 42(6):708–716
doi: 10.1016/j.ejca.2006.01.020 pubmed: 16556496
Liu N, Liu M, Fu S, Wang J, Tang H, Isah AD, Chen D, Wang X (2022) Ang2-targeted combination therapy for cancer treatment. Front Immunol 13:949553
doi: 10.3389/fimmu.2022.949553 pubmed: 35874764 pmcid: 9305611
Yu S, Zhang Y, Li Q, Zhang Z, Zhao G, Xu J (2019) CLDN6 promotes tumor progression through the YAP1-snail1 axis in gastric cancer. Cell Death Dis 10(12):949
doi: 10.1038/s41419-019-2168-y pubmed: 31827075 pmcid: 6906326
Choi HS, Hwang JH (2024) Endoscopic resection of early luminal cancer. Gastroenterol Clin N 34(1):51–78
Kinoshita H, Hirata Y, Nakagawa H, Sakamoto K, Hayakawa Y, Takahashi R, Nakata W, Sakitani K, Serizawa T, Hikiba Y, Akanuma M, Shibata W, Maeda S, Koike K (2013) Interleukin-6 mediates epithelial-stromal interactions and promotes gastric tumorigenesis. Plos One 8(4):e60914
doi: 10.1371/journal.pone.0060914 pubmed: 23593346 pmcid: 3625204
Tang X, Ding Q, Chen C, Chen F, Zhou X, Hong C, Pan W (2019) Micheliolide inhibits gastric cancer growth in vitro and in vivo via blockade of the IL-6/STAT3 pathway. Pharmazie 74(3):175–178
pubmed: 30961685
Wu CW, Wang SR, Chao MF, Wu TC, Lui WY, P’Eng FK, Chi CW (1996) Serum interleukin-6 levels reflect disease status of gastric cancer. Am J Gastroenterol 91(7):1417–1422
pubmed: 8678006
Yang Z, Guo L, Sun Y, Huang Y, Li J, Lin Y, Zhang X, Wu D, Luo Y (2024) Investigation of the causal relationship between Interleukin-6 signaling and gastrointestinal tract cancers: a Mendelian randomization study. Digest Liver Dis 56(4):679–686
doi: 10.1016/j.dld.2023.08.040
Chen S-Z, Yao H-Q, Zhu S-Z, Li Q-Y, Guo G-H, Yu J (2015) Expression levels of matrix metalloproteinase-9 in human gastric carcinoma. Oncol Lett 9(2):915–919
doi: 10.3892/ol.2014.2768 pubmed: 25621068
Dragutinovic V, Izrael-Zivkovic L, Radovanovic N (2009) Relation of matrix metalloproteinase-9 to different stages of tumors in the serum of gastric cancer. Digest Dis Sci 54(6):1203–1207
doi: 10.1007/s10620-008-0472-y pubmed: 18719998
Gao Z-L, Zhang C, Du G-y, Lu Z-J (2007) Clinical significance of changes in tumor markers, extracellular matrix, MMP-9 and VEGF in patients with gastric carcinoma. Hepato-Gastroenterol 54(77):1591–1595
Mroczko B, Groblewska M, Lukaszewicz-Zajac M, Bandurski R, Kedra B, Szmitkowski M (2009) Pre-treatment serum and plasma levels of matrix metalloproteinase 9 (MMP-9) and tissue inhibitor of matrix metalloproteinases 1 (TIMP-1) in gastric cancer patients. Clin Chem Lab Med 47(9):1133–1139
doi: 10.1515/CCLM.2009.253 pubmed: 19728856
Tran VA, Tran TTV, Le VT, Doan VD, Vo GNL, Tran VH, Jeong H, Vo TTT (2024) Advanced nano engineering of surface-enhanced Raman scattering technologies for sensing applications. Appl Mater Today 38:102217
doi: 10.1016/j.apmt.2024.102217
Wang C, Liu S, Ju H (2023) Electrochemiluminescence nanoemitters for immunoassay of protein biomarkers. Bioelectrochemistry 149:108281
doi: 10.1016/j.bioelechem.2022.108281 pubmed: 36283193
Aydin S (2015) A short history, principles, and types of ELISA, and our laboratory experience with peptide/protein analyses using ELISA. Peptides 72:4–15
doi: 10.1016/j.peptides.2015.04.012 pubmed: 25908411
Huang S, Chen Y (2008) Ultrasensitive fluorescence detection of single protein molecules manipulated electrically on Au nanowire. Nano Lett 8(9):2829–2833
doi: 10.1021/nl801429p pubmed: 18666800
Guo J, Liu Y, Ju H, Lu G (2022) From lab to field: Surface-enhanced Raman scattering-based sensing strategies for on-site analysis. Trac-Trend Anal Chem 146:116488
doi: 10.1016/j.trac.2021.116488
Mandal P, Tewari BS (2022) Progress in surface enhanced Raman scattering molecular sensing: a review. Surf Interfaces 28:101655
doi: 10.1016/j.surfin.2021.101655
Chen R, Li S, Ren S, Han D, Qin K, Jia X, Zhou H, Gao Z (2024) Micro−/nanostructures for surface-enhanced Raman spectroscopy: recent advances and perspectives. Adv Colloid Interfac 331:103235
doi: 10.1016/j.cis.2024.103235
Zhang L, Yu Y, Zhu X, Song L, Zhao Y, Jiang L, Zhao X, Lv B, Sun Y, Huang Y (2024) Tailorable janus plasmonic SERS platform with hotspots integrating and analytes enriching property for multiple sensing. Sensor Actuat B-Chem 413:135721
doi: 10.1016/j.snb.2024.135721
Mahmoud MA (2013) Surface-enhanced raman spectroscopy of double-shell hollow nanoparticles: electromagnetic and chemical enhancements. Langmuir 29(21):6253–6261
doi: 10.1021/la400845z pubmed: 23647422
Shao H, Lin H, Guo Z, Lu J, Jia Y, Ye M, Su F, Niu L, Kang W, Wang S, Hu Y, Huang Y (2019) A multiple signal amplification sandwich-type SERS biosensor for femtomolar detection of miRNA. Biosens Bioelectron 143:111616
doi: 10.1016/j.bios.2019.111616 pubmed: 31472412
Tian R, Sun J, Ye Y, Lu X, Sun X (2024) Screening strategy of aptamer and its application in food contaminants determination. Trac-Trend Anal Chem 175:117710
doi: 10.1016/j.trac.2024.117710
Rimmele M (2003) Nucleic acid aptamers as tools and drugs: Recent developments. ChemBioChem 4(10):963–971
doi: 10.1002/cbic.200300648 pubmed: 14523912
Liu S, Xu Y, Jiang X, Tan H, Ying B (2022) Translation of aptamers toward clinical diagnosis and commercialization. Biosens Bioelectron 208:114168
doi: 10.1016/j.bios.2022.114168 pubmed: 35364525
Urmi R, Banerjee P, Singh M, Singh R, Chhillar S, Sharma N, Chandra A, Singh N, Qamar I (2024) Revolutionizing biomedicine: aptamer-based nanomaterials and nanodevices for therapeutic applications. Biotechnology Reports 42:e00843
doi: 10.1016/j.btre.2024.e00843 pubmed: 38881649 pmcid: 11179248
Siavashy S, Soltani M, Rahimi S, Hosseinali M, Guilandokht Z, Raahemifar K (2024) Recent advancements in microfluidic-based biosensors for detection of genes and proteins: applications and techniques. Biosens Bioelectron: X 19:100489
Garmasukis R, Hackl C, Charvat A, Mayr SG, Abel B (2023) Rapid prototyping of microfluidic chips enabling controlled biotechnology applications in microspace. Curr Opin Biotech 81:102948
doi: 10.1016/j.copbio.2023.102948 pubmed: 37163825
Xu L-L, Jin Z-M, Fan Y-Q (2022) Research progress and application of microneedle and microfluidics integration. Chinese J Anal Chem 50(4):506–515
Fu C, Wang Y, Chen G, Yang L, Xu S, Xu W (2015) Aptamer-based surface-enhanced raman scattering-microfluidic sensor for sensitive and selective polychlorinated biphenyls detection. Anal Chem 87(19):9555–9558
doi: 10.1021/acs.analchem.5b02508 pubmed: 26339871
Shen W, Wang C, Yang X, Wang C, Zhou Z, Liu X, Xiao R, Gu B, Wang S (2020) Synthesis of raspberry-like nanogapped Fe
doi: 10.1039/D0TC03129A
Pang Y, Wang C, Lu L, Wang C, Sun Z, Xiao R (2019) Dual-SERS biosensor for one-step detection of microRNAs in exosome and residual plasma of blood samples for diagnosing pancreatic cancer. Biosens Bioelectron 130:204–213
doi: 10.1016/j.bios.2019.01.039 pubmed: 30745282
Wang K, Li J (2021) Reliable SERS detection of pesticides with a large-scale self-assembled Au@4-MBA@Ag nanoparticle array. Spectrochim Acta A 263:120218
doi: 10.1016/j.saa.2021.120218

Auteurs

Yong Huang (Y)

Department of Gastrointestinal Surgery, Jiangdu People's Hospital Affiliated to Yangzhou University, Yangzhou, 225200, P. R. China.

Miao Chen (M)

Institute of Translational Medicine, Medical College, Yangzhou University, Yangzhou, 225001, P. R. China.

Fengjuan Jiang (F)

Department of Gastroenterology, Jiangdu People's Hospital Affiliated to Yangzhou University, Yangzhou, 225200, P. R. China.

Chengzhe Lu (C)

Kangda College of Nanjing Medical University, Lianyungang, 222000, P. R. China.

Qunshan Zhu (Q)

Department of Gastrointestinal Surgery, Jiangdu People's Hospital Affiliated to Yangzhou University, Yangzhou, 225200, P. R. China.

Yan Yang (Y)

Department of Gastrointestinal Surgery, Jiangdu People's Hospital Affiliated to Yangzhou University, Yangzhou, 225200, P. R. China.

Lei Fu (L)

Department of Pathology, Jiangdu People's Hospital Affiliated to Yangzhou University, Yangzhou, 225200, P. R. China.

Limao Li (L)

Department of Gastrointestinal Surgery, Jiangdu People's Hospital Affiliated to Yangzhou University, Yangzhou, 225200, P. R. China.

Jia Liu (J)

Department of Gastroenterology, Jiangdu People's Hospital Affiliated to Yangzhou University, Yangzhou, 225200, P. R. China.

Zhenguang Wang (Z)

Department of Gastrointestinal Surgery, Jiangdu People's Hospital Affiliated to Yangzhou University, Yangzhou, 225200, P. R. China.

Xiaowei Cao (X)

Institute of Translational Medicine, Medical College, Yangzhou University, Yangzhou, 225001, P. R. China.

Wei Wei (W)

Department of Gastrointestinal Surgery, Jiangdu People's Hospital Affiliated to Yangzhou University, Yangzhou, 225200, P. R. China. jd.k.kenny@163.com.

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